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Numerical Investigation on Influence of Ambient Electric Field on Error Characteristic of Capacitive Voltage Transformer

机译:环境电场对电容电压变压器误差特性影响的数值研究

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Capacitive voltage transformer (CVT) is widely used for voltage measurement in power systems. According to practical operations, ambient electric field severely influences measurement error of CVT. To study error characteristics of CVT related to ambient electric field, 3D finite element models of 500 kV CVT along with surrounding electrified equipment (arrester, high-voltage lead, as interfering factors of ambient electric field) are established. Besides, a three-phase CVT equivalent model is built to study influence of interphase interference on error characteristics of CVT. Simulation shows that measurement error is related to the distance between CVT and arrester, height of the arrester pillar and high voltage terminal potential of arrester. Furthermore, variations in angle and length of high-voltage lead would also impact on error of CVT. Effect of interphase interference on CVT error weakens with the increase of interphase distance. Validity of simulation results is verified with off-line experiments.
机译:电容电压互感器(CVT)广泛用于电力系统中的电压测量。根据实际操作,环境电场严重影响CVT的测量误差。为了研究与环境电场相关的CVT的误差特性,建立了500 kV CVT的3D有限元模型以及周围的电气化设备(避雷器,高压铅,作为环境电场的干扰因子)。此外,建立了三相CVT等效模型,以研究相互作用对CVT误差特性的影响。仿真显示测量误差与CVT和避雷器之间的距离,避雷器支柱高度和避雷器的高压端子电位相关。此外,高压引线的角度和长度的变化也会影响CVT的误差。间隔干扰对CVT误差的影响随着差异距离的增加而削弱。仿真结果的有效性通过离线实验进行了验证。

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